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Hirszfeld Institute of Immunology and Experimental Therapy Polish Academy of Sciences | Poland | about 2 months ago
Description KEY WORDS: Genomics, gene editing, CRISPR-Cas9, next-generation sequencing (NGS), nanopore sequencing Where to apply E-mail kadry@hirszfeld.pl Requirements Research FieldBiological sciences
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Kit and supplies for Nanopore MinION sequencing. Furthermore, the Temp Research Asst must possess a solid background in molecular biology techniques for the detection and sequencing of pathogen genomes
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nanopores and nanoporous membranes” Disciplines: ion transport chemistry and physics, nanopores, energy devices, fuel cells, osmotic energy, membrane chemistry and physics, organic chemistry About the Project
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control of DNA and RNA samples. • Construction of Direct RNA sequencing libraries and Nanopore sequencing. • Perform routine analysis of data and assist with troubleshooting and data quality control
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preparation of material for downstream genomic assays including Illumina genotyping and Oxford Nanopore sequencing. Working closely with a multidisciplinary team of laboratory scientists, bioinformaticians, and
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. • Collaborate on advanced characterization and synthesis projects. • Organise seminars, workshops The project will take place within the framework of the Labels d'excellence Center for zeolites and nanoporous
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, and sequencing library preparation Conduct Oxford Nanopore Sequencing Analyze resulting data * - The job duties listed are typical examples of work performed by positions in this job classification and
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» InformaticsEducation LevelMaster Degree or equivalent Skills/Qualifications • Programming skills in R and PYTHON • Proficiency in high-throughput sequencing data analysis tools (Illumina, Oxford Nanopore Technologies
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analytics including HPLC and/or LC/GC-MS Protein expression, purification and characterization using biochemical and biophysical assays Variant identification using next generation sequencing (e.g., Nanopore
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using nanopore technologies explore structural genomic differences between populations by combining de novo assemblies into a pan-genome graph perform population genomics analyses on re-sequenced animals